Nowak, M.; Sasak, K.; Wlodarczyk, A.; Grabska-Kobylecka, I.; Sarniak, A.; Nowak, D.
A Modified Fenton’s System Fe2+–EGTA–H2O2 Reveals That Redox Activities of Simple Polyphenols Are Suppressed in Binary Mixtures. Molecules 2025, 30, 2269.
https://doi.org/10.3390/molecules30112269
AMA Style
Nowak M, Sasak K, Wlodarczyk A, Grabska-Kobylecka I, Sarniak A, Nowak D.
A Modified Fenton’s System Fe2+–EGTA–H2O2 Reveals That Redox Activities of Simple Polyphenols Are Suppressed in Binary Mixtures. Molecules. 2025; 30(11):2269.
https://doi.org/10.3390/molecules30112269
Chicago/Turabian Style
Nowak, Michał, Krzysztof Sasak, Anna Wlodarczyk, Izabela Grabska-Kobylecka, Agata Sarniak, and Dariusz Nowak.
2025. "A Modified Fenton’s System Fe2+–EGTA–H2O2 Reveals That Redox Activities of Simple Polyphenols Are Suppressed in Binary Mixtures" Molecules 30, no. 11: 2269.
https://doi.org/10.3390/molecules30112269
APA Style
Nowak, M., Sasak, K., Wlodarczyk, A., Grabska-Kobylecka, I., Sarniak, A., & Nowak, D.
(2025). A Modified Fenton’s System Fe2+–EGTA–H2O2 Reveals That Redox Activities of Simple Polyphenols Are Suppressed in Binary Mixtures. Molecules, 30(11), 2269.
https://doi.org/10.3390/molecules30112269